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An Enhanced Fuzzy Rule Based Protection Scheme for TCSC Compensated Double Circuit Transmission System

机译:用于TCSC补偿双电路传输系统的增强型模糊规则保护方案

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This paper introduces a fault detection and faulty phase selection technique for a double-circuit transmission line with thyristor-controlled series capacitor (TCSC). In a transmission system, the nonlinear operation of TCSC during switching modes distorted the voltage and current signals. The effect is more if the fault occurred at zero fault inception angle. An advanced protection approach to overcome these issues based on dynamic phasor estimation of current from local measurements is proposed in this work. The maximum transient component obtained from three phases is used as an index to accomplish the detection task. However, due to the nonlinear operation of different accessories connected to the controller unit such as metal oxide varistor (MOV) and thyristor circuit, identification of the exact faulty phase is still a challenge. To mitigate this issue, fuzzy decision-based rules are framed so that identification of exact faulty phases is possible. For validation, the method is tested on a 400-kV, 50-Hz power system model developed using EMTDC/PSCAD. Results obtained from simulation indicate that the method is reliable and a secure unit protection can be effectively provided to a double-circuit transmission system equipped with TCSC.
机译:本文介绍了具有晶闸管控制串联电容(TCSC)的双电路输电线路故障检测和故障相位选择技术。在传输系统中,切换模式期间TCSC的非线性操作使电压和电流信号失真。如果断层发生在零故障成立角度时,效果更多。在这项工作中提出了一种基于来自局部测量的动态相控符估计的基于动态相位估计来自本地测量的动态相位估计的先进保护方法。从三个阶段获得的最大瞬态分量用作完成检测任务的索引。然而,由于连接到控制器单元的不同附件的非线性操作,例如金属氧化物变阻器(MOV)和晶闸管电路,识别确切的故障相位仍然是一个挑战。为缓解此问题,将框架模糊决策规则,以便识别确切的错误阶段。为了验证,在使用EMTDC / PSCAD开发的400kV,50 Hz电力系统模型上测试该方法。从模拟获得的结果表明该方法可靠,并且可以有效地提供到配备有TCSC的双电路传输系统的安全单元保护。

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